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- 182 Pages
Global
From €3096EUR$3,545USD£2,690GBP
€3440EUR$3,939USD£2,988GBP
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- August 2025
- 191 Pages
Global
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€3440EUR$3,939USD£2,988GBP
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- May 2025
- 120 Pages
Global
From €4148EUR$4,750USD£3,604GBP
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- February 2025
- 183 Pages
Global
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- 150 Pages
Global
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€4236EUR$4,850USD£3,680GBP
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- June 2025
- 220 Pages
Global
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€4236EUR$4,850USD£3,680GBP
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Global
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€4236EUR$4,850USD£3,680GBP
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Global
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- 214 Pages
Global
From €3493EUR$4,000USD£3,035GBP
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- 308 Pages
Global
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- July 2024
- 80 Pages
From €3013EUR$3,450USD£2,617GBP
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- July 2024
- 99 Pages
North America
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- July 2024
- 85 Pages
Middle East, Africa
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- July 2024
- 100 Pages
Europe
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- July 2024
- 103 Pages
Asia Pacific
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- January 2024
- 211 Pages
Global
From €3886EUR$4,450USD£3,376GBP
- Report
- October 2023
- 188 Pages
Global
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- October 2023
- 181 Pages
Global
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- Report
- June 2023
- 103 Pages
Europe
From €1310EUR$1,500USD£1,138GBP
- Book
- March 2019
- 252 Pages

Hot Isostatic Pressing (HIP) is a process used to densify and strengthen metals and minerals. It is a form of pressure-assisted sintering, where a material is heated and pressurized in an inert gas environment. The process is used to improve the properties of materials such as strength, ductility, and wear resistance. It is also used to reduce porosity and improve the homogeneity of the material. HIP is used in a variety of industries, including aerospace, automotive, medical, and energy.
HIP is used to densify and strengthen metals and minerals, such as aluminum, titanium, and steel alloys. It is also used to improve the properties of ceramics, such as alumina, zirconia, and silicon nitride. The process is also used to improve the properties of composites, such as carbon fiber reinforced plastics.
Companies in the Hot Isostatic Pressing market include Carpenter Technology Corporation, Praxair Technology, Inc., and Bodycote plc. Show Less Read more